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首页> 外文期刊>Journal of Macromolecular Science. Pure and Applied Chemistry >POLYMERIZATION INITIATED BY THE SYSTEM TRIETHANOLAMINE/HYDROGEN SULFITE WITH AND WITHOUT THE COOPERATION OF HYDROGEN PEROXIDE. 1. POLYMERIZATION OF ACRYLAMIDE
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POLYMERIZATION INITIATED BY THE SYSTEM TRIETHANOLAMINE/HYDROGEN SULFITE WITH AND WITHOUT THE COOPERATION OF HYDROGEN PEROXIDE. 1. POLYMERIZATION OF ACRYLAMIDE

机译:由三乙醇胺/亚硫酸氢盐体系在有或没有过氧化氢作用下引发的聚合反应。 1.丙烯酰胺的聚合

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摘要

Attempts to initiate the aqueous polymerization of acrylamide, AAm, by the hydrogen sulfite/oxygen system failed. This is contrary to acrylic acid, whose monomer indeed undergoes initiation by the above initiator. Efforts to start the AAm polyreaction by hydrogen sulfite without air also yielded no polymer. It was discovered, however, that sodium pyrosulfite, PS, coupled with triethanolamine, TEA, in equimolar ratios provides a system, TEA/PS, able to generate radicals even at relatively low temperatures. On the basis of ESR investigations, these proved to be HSO_3 active centers. At three temperature (273, 278, 283 K) at an initiator (TEA/PS) molar concentration range of c_(I(0)) = 0.0066-0.02 mol/ dm~3, and for a monomer (AAm) concentration range of c_(M(0)) = 0.43-1.374 mol/dm~3, high rates of polymerization lying between r_p = 24.9 X 10~(-6) and 727.5 x 10~(-6) mol/dm~3·s were determined. Linear relationships between lg(r_p) vs lg(c_(I(0))) at constant c_(M(0)) and lg(r_p) vs lg(c_(M(0))), at constant c_(I(0)) display slopes of 1.0 and 2.5, respectively. Due to "cage effects," the reaction yields are not very high, amounting to 70% at best. By supplementing the TEA/PS system with equimolar amounts of H_2O_2, a significant change of the mechanism of radical generation takes place. According to the ESR spectrum, the unpaired electrons appear here to be centered on the tert-amine molecules. By employing either the TEA/ PS or the TEA/PS/H_2O_2 system at temperature levels of 35 or 60℃ respectively, under proper conditions, the possibility exists to tailor the molecular masses of polyacrylamides in the M_w = 1 x 10~5 to 4 x 10~6 g/mol range. The presence of H_2O_2 improves the reaction yield.
机译:尝试通过亚硫酸氢/氧气系统引发丙烯酰胺AAm的水性聚合。这与丙烯酸相反,丙烯酸的单体确实被上述引发剂引发。在没有空气的情况下通过亚硫酸氢开始AAm聚合反应的努力也没有产生聚合物。但是,发现焦亚硫酸钠PS与三乙醇胺TEA等摩尔比提供了TEA / PS系统,即使在相对较低的温度下也能产生自由基。根据ESR调查,这些都是HSO_3活动中心。在引发剂(TEA / PS)的三个温度(273、278、283 K)下,摩尔浓度范围c_(I(0))= 0.0066-0.02 mol / dm〜3,对于单体(AAm)浓度范围为c_(M(0))= 0.43-1.374 mol / dm〜3,高聚合速率介于r_p = 24.9 X 10〜(-6)和727.5 x 10〜(-6)mol / dm〜3·s之间决心。常数c_(M(0))下lg(r_p)与lg(c_(I(0)))之间的线性关系以及常数c_(I( 0))分别显示1.0和2.5的斜率。由于“笼效应”,反应产率不是很高,最多可达70%。通过用等摩尔量的H_2O_2补充TEA / PS系统,自由基产生机理发生了重大变化。根据ESR谱图,未配对的电子在这里似乎集中在叔胺分子上。通过在适当的条件下分别在35或60℃的温度下使用TEA / PS或TEA / PS / H_2O_2系统,有可能将M_w = 1 x 10〜5的聚丙烯酰胺的分子量调整为4 x 10〜6 g / mol范围。 H_2O_2的存在提高了反应产率。

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